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Challenges in Exposure Modeling of Nanoparticles in Aquatic Environments

机译:在水生环境中纳米颗粒的暴露建模面临的挑战

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摘要

Managing the potential environmental risks of nanoparticles requires methods to link nanoparticle properties with macro-scale risks. This study outlines challenges in exposure modeling of nanoparticles in aquatic environments, such as the role of natural organic matter, natural colloids, fractal dimensions of agglomerates, coat-ings and doping of particles, and uncertainties regarding nanoparticle emissions to aquatic environments. The pros and cons of the exposure indicators mass con-centration, particle number concentration, and surface area are discussed. By ap-plying colloid chemistry kinetic equations describing particle agglomeration and sedimentation for the case of titanium dioxide nanoparticles, a limited exposure assessment including some of the factors mentioned is conducted with particle number concentration as the exposure indicator. The results of the modeling indi-cate that sedimentation, shear flows, and settling are of less importance with regard to particle number based predicted environmental concentrations. The inflow of nanoparticles to the water compartment had a significant impact in the model, and the collision efficiency (which is affected by natural organic matter) was shown to greatly affect model output. Implications for exposure modeling, regulation, and science are discussed. A broad spectrum of scientific disciplines must be engaged in the development of exposure models where nano-level properties are linked to macro-scale risk.
机译:管理纳米颗粒的潜在环境风险要求将纳米颗粒的性质与宏观风险联系起来的方法。这项研究概述了水生环境中纳米颗粒暴露模型的挑战,例如天然有机物的作用,天然胶体,团聚体的分形维数,颗粒的涂层和掺杂以及有关纳米颗粒向水生环境排放的不确定性。讨论了暴露指标质量浓度,颗粒数浓度和表面积的优缺点。通过应用描述二氧化钛纳米粒子情况的胶体化学动力学方程式描述颗粒的团聚和沉降,以颗粒数浓度作为暴露指标进行了有限的暴露评估,其中包括提到的一些因素。建模结果表明,相对于基于颗粒数的预测环境浓度而言,沉降,剪切流和沉降的重要性较小。纳米颗粒向水室的流入对模型有重大影响,并且碰撞效率(受天然有机物影响)显示出对模型输出的极大影响。讨论了暴露模型,法规和科学的含义。广泛的科学学科必须参与暴露模型的开发,在这些模型中,纳米级特性与宏观风险相关。

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